On the Secrecy-Reliability Performance Trade-off for NOMA-enabled 5G mmWave Networks

Sourabh Solanki, D. Gurjar, P. Sharma, S. Sharma, S. Chatzinotas
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引用次数: 3

Abstract

The evolution of 5G wireless networks poses significant research challenges such as securing the user data, maintaining certain latency and reliability requirements etc. However, it can be challenging to simultaneously meet these performance requisites, which may lead to resort to a trade-off among different metrics. This paper investigates the secrecy-reliability performance trade-off (SRPT) for non-orthogonal multiple access (NOMA)-based millimeter wave (mmWave) networks. Herein, we consider two end-users, namely primary and secondary, which are served by an mmWave base station using downlink NOMA. Besides, a passive eavesdropper lying in the vicinity of these end-users attempts to intercept their legitimate message signals. For this set-up, we derive the closed-form expressions of the outage probability (OP) of a targeted end-user and intercept probability (IP) of the eavesdropper to analyze the SRPT of the system. We further propose a low-complexity average channel state information (CSI)-based power allocation strategy to improve the reliability of a targeted user while maintaining its information secrecy. Moreover, we obtain the condition under which NOMA guarantees superior secrecy performance than that of orthogonal multiple access (OMA) scheme. We corroborate our theoretical analysis via simulation results presented in terms of IP and OP.
基于noma的5G毫米波网络的保密性与可靠性性能权衡
5G无线网络的发展带来了重大的研究挑战,如保护用户数据、保持一定的延迟和可靠性要求等。然而,同时满足这些性能要求可能是具有挑战性的,这可能导致在不同的度量之间进行权衡。研究了基于非正交多址(NOMA)的毫米波(mmWave)网络的保密性-可靠性性能权衡(SRPT)问题。在这里,我们考虑两个终端用户,即主用户和辅助用户,它们由使用下行链路NOMA的毫米波基站提供服务。此外,处于这些终端用户附近的被动窃听者试图拦截他们的合法消息信号。针对这种设置,我们推导了目标终端用户的中断概率(OP)和窃听者的拦截概率(IP)的封闭表达式,以分析系统的SRPT。我们进一步提出了一种基于低复杂度平均信道状态信息(CSI)的功率分配策略,以提高目标用户的可靠性,同时保持其信息的保密性。此外,我们还得到了NOMA方案比正交多址(OMA)方案具有更好的保密性能的条件。我们通过IP和OP方面的仿真结果证实了我们的理论分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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